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Raposo, C. D., R. Costa, K. T. Petrova, C. Brito, M. T. Scotti, and M. M. Cardoso. "Development of Novel Galactosylated PLGA Nanoparticles for Hepatocyte Targeting Using Molecular Modelling." \i Polymers\i0 . 12.1 (2020): 94-112. DOI:10.3390/polym12010094.\par \par Petrova, K. T., M. T. Barros, R. C. Calhelha, M. Sokovic, and I. C. F. R. Ferreira. "Antimicrobial and cytotoxic activities of short carbon chain unsaturated sucrose esters." \i Med. Chem. Res\i0 . 27.3 (2018): 980-988. DOI: 10.1007/s00044-017-2121-5.\par \par Silva, H., R. Chaves, H. Laronha, F. Vicente, C. Branco, K. T. Petrova, A. Azul, M. Polido, and J. CALDEIRA. "Translational Research and Innovation in Human and Health Science: Inhibitors for matrix metalloproteinases, molecular design for dental restoration." \i Annals of Medicine\i0 . 50.sup1 (2018):  S10-S170. DOI: 10.1080/07853890.2018.1427445.\par \par Cardoso, M. M., I. N. Peca, C. D. Raposo, K. T. Petrova, M. T. Barros, R. Gardner, and A. Bicho. "Doxorubicin-loaded galactoseconjugated poly(d,l-lactide-co-glycolide) nanoparticles as hepatocyte-targeting drug carrier." \i J. Microencapsul\i0 . 33.4 (2016): 315-322. DOI: 10.1080/02652048.2016.1185474.\par \par Raposo, C. D., K. T. Petrova, M. T. Barros, R. C. Calhelha, M. Sokovic, and I. C. F. R. Ferreira. "Synthesis, Characterization, Antimicrobial and Antitumor Activities of Sucrose Octa(N-ethyl)carbamate." \i Med. Chem\i0 . 12.1 (2016): 22-29. DOI: 10.2174/1573406410666150807111029 .\par \par Petrova, K. T., T. M. Potewar, P. Correia-da-Silva, M. T. Barros, R. C. Calhelha, A. Ciric, M. Sokovic, and I. C. F. R. Ferreira. "Antimicrobial and cytotoxic activities of 1,2,3-triazole-sucrose derivatives." \i Carbohydr. Res\i0 . 417 (2015): 66-71. DOI: 10.1016/j.carres.2015.09.003.\par \par Petrova, K. T., S. S. Dey, and M. T. Barros. "Formation of spherical and core-shell polymeric microparticles from glycopolymers." \i Carbohydr. Polym\i0 . 125 (2015): 281-287. DOI: 10.1016/j.carbpol.2015.02.052.\par \par Crucho, C. I. C., P. Correia-da-Silva, K. T. Petrova, and M. T. Barros. "Recent progress in the field of glycoconjugates." \i Carbohydr. Res\i0 . 402 (2015): 124-132. DOI: 10.1016/j.carres.2014.10.005.\par \par Raposo, C. D., K. T. Petrova, and M. T. Barros. "Synthesis of cross-linked polymeric microparticles containing hexa-O-benzylsucrose." \i Des. Monomers Polym\i0 . 18.8 (2015): 753-760. DOI: 10.1080/15685551.2015.1070507.\par \par Petrova, K. T., T. M. Potewar, O. S. Ascenso, and M. T. Barros. "Amide-linked N-methacryloyl sucrose containing polymers." \i Carbohydr. Polym\i0 . 110 (2014): 38-46. DOI: 10.1016/j.carbpol.2014.03.050.\par \par Petrova, K. T., P. Correia-da-Silva, C. I. C. Crucho, and M. T. Barros. "Chemoselective synthesis of sucrose building blocks and their polymerization." \i Curr. Org. Chem\i0 . 18.13 (2014): 1788-1802. DOI: 10.2174/1385272819666140527231535.\par \par Barros, Teresa M., Krasimira T. Petrova, Paula Correia da Silva, and Ana Paula Esteves. "Efficient Microwave-Assisted Synthesis of 1?,2,3,3?,4,4?,6-Hepta-O-Benzyl-Sucrose and 1?,2,3,3?,4,4?-Hexa-O-Benzylsucrose." \i Carbohydrate Chemistry: Proven Synthetic Methods, Volume 2, Chapter 14\i0 . Eds. Gijsbert van der Marel, and Jeroen Codee. CRC Press, Taylor & Francis Group,  2014. 103-123.\par \par Raposo, C. D., K. T. Petrova, and M. T. Barros. "Microwave-Assisted Protocols Applied to the Synthesis of 1?,2,3,3?,4,4?-Hexa-O-benzylsucrose." \i Synthetic Commun\i0 . 44.20 (2014): 3027-3036. DOI:10.1080/00397911.2014.926555.\par \par Potewar, T. M., K. T. Petrova, and M. T. Barros. "Efficient microwave assisted synthesis of novel 1,2,3-triazole-sucrose derivatives by cycloaddition reaction of sucrose azides and terminal alkynes." \i Carbohydr. Res\i0 . 379 (2013): 60-67. DOI: 10.1016/j.carres.2013.06.017.\par \par Mouquinho, AI, K. T. Petrova, M. T. Barros, and J. C. Sotomayor. "New Polymer Networks for PDLC Films Application." \i New Polymers for Special Applications \i0 . Ed. A. De-Souza-Gomes. Rijeka: InTech,  2012. 139-164.\par \par Pe\'e7a, I. N., K. T. Petrova, M. M. Cardoso, and M. T. Barros. "Preparation and Characterization of Polymeric Nanoparticles Composed of Poly(DL-lactide-co-glycolide) and Poly(DL-lactide-co-glycolide)-co-poly(ethylene glycol) 10%Triblock end-capped with a galactose moiety." \i React. Funct. Polym\i0 . 72.10 (2012): 729-735. DOI: 10.1016/j.reactfunctpolym.2012.06.019.\par \par Barros, M. T., AI Mouquinho, K. T. Petrova, M. D. Saavedra, and J. C. Sotomayor. "Fast synthesis employing a microwave assisted neat protocol of new monomers potentially useful for the preparation of PDLC films." \i Cent. Eur. J. Chem\i0 . 9.4 (2011): 557-566. DOI: 10.2478/s11532-011-0046-2.\par \par Mouquinho, A., M. Saavedra, A. Maiau, K. T. Petrova, M. T. Barros, J. L. Figueirinhas, and J. Sotomayor. "Films based on new methacrylate monomers: synthesis, characterisation and electro-optical properties." \i Mol. Cryst. Liq. Cryst\i0 . 542.1 (2011): 132-140. DOI: 10.1080/15421406.2011.570154.\par \par Lewandowski, B., A. Listkowski, K. T. Petrova, and S. Jarosz. "Functionalisation of terminal positions of sucrose - Part II: Preparation of 1?,2,3,3?,4,4?-hexa-O-benzyl sucrose and 6,6?-bis-O-(2-hydroxyethyl)-1?,2,3,3?,4,4?-hexa-O-benzylsucrose." \i Carbohydrate Chemistry: Proven Synthetic Methods\i0 . Ed. P. Kovac. Taylor & Francis Group: CRC Press,  2011. 407-425.\par \par Barros, M. T., K. T. Petrova, P. Correia-da-Silva, and T. M. Potewar. "Library of Mild and Economic Protocols for the Selective Derivatization of Sucrose under Microwave Irradiation." \i Green Chem\i0 . 13.7 (2011): 1897-1906. DOI: 10.1039/c1gc15228a.\par \par Barros, M. T., K. T. Petrova, and P. Correia-da-Silva. "Sucrose chemistry: Fast and Efficient Microwave-Assisted Protocols for the Generation of Sucrose-Containing Monomer Libraries." \i Microwave Heating \i0 . Ed. U. Chandra. Rijeka: InTech,  2011. 309-332.\par \par Barros, M. T., K. T. Petrova, and R. P. Singh. "Synthesis and biodegradation studies of new copolymers based on sucrose derivatives and styrene." \i Eur. Polym J\i0 . 46.5 (2010): 1151-1157. DOI: 10.1016/j.eurpolymj.2010.02.002.\par \par Barros, M. T., K. T. Petrova, and R. P. Singh. "Synthesis of Hydrophilic and Amphiphilic Acryl Sucrose Monomers and Their Copolymerisation with Styrene, Methylmethacrylate and ?- and ?-Pinenes." \i Int. J. Mol. Sci\i0 . 11.4 (2010): 1792-1807. DOI: 10.3390/ijms11041792.\par \par Barros, M. T., and K. T. Petrova. "Ziegler-Natta catalysed polymerisation for the preparation of potentially biodegradable copolymers with pendant sucrose moieties." \i Eur. Polym J\i0 . 45.1 (2009): 295-301. DOI: 10.1016/j.eurpolymj.2008.10.013.\par \par Crucho, C. C., K. T. Petrova, R. C. Pinto, and M. T. Barros. "Novel Unsaturated Sucrose Ethers and Their Application as Monomers." \i Molecules\i0 . 13.4 (2008): 762-770. DOI: 10.3390/molecules13040762.\par \par Barros, M. T., K. T. Petrova, and A. M. Ramos. "Potentially Biodegradable Polymers based on ?- or ?-Pinene and Sugar Derivatives or Styrene, Obtained under Normal Conditions and Microwave Irradiation." \i Eur. J. Org. Chem\i0 .8 (2007): 1357-1363. DOI: 10.1002/ejoc.200600890.\par \par Viteva, L., T. Gospodova, Y. Stefanovsky, K. T. Petrova, I. Timtcheva, M. - R. Mazi\'e8res, and J. - G. Wolf. "Organometalics in the Cyanine Chemistry. Synthesis, Reactivity and Photophysical Properties of some Heptamethine Merocyanine Dyes." \i Eur. J. Org. Chem\i0 .2 (2004): 385-394. DOI: 10.1002/ejoc.200300446.\par \par Barros, M. T., K. T. Petrova, and A. M. Ramos. "Regioselective Copolymerisation of Acryl Sucrose Monomers." \i J. Org. Chem\i0 . 69.22 (2004): 7772-7775. DOI: 10.1021/jo048957y.\par \par Devedjiev, I., K. Petrova, I. Glavchev, and K. Karshalakov. "Influence of the vicinal hydroxyl group on the aminolysis of esters. A kinetic study." \i Bulgarian chemical communications\i0 . 35.2 (2003): 92-94. http://cl.bas.bg/hosted-journals-of-the-bulgarian-academy-of-sciences/bulgarian-chemical-communications/bbc?set_language=.\par \par Glavchev, I., D. Pavlov, N. Gospodinova, K. T. Petrova, and I. Devedjiev. "On the activity of catalysts for ring opening and condensation reactions." \i Journal of the University of Chemical Technology and Metallurgy\i0 . 38 (2003): 331-336. http://dl.uctm.edu/journal/node/j2003-2/ChemOr.htm#14.\par \par Glavchev, I., K. T. Petrova, and I. Devedjiev. "Determination of the activity of phosphorus containing conpounds on the crosslinking of epoxy resins by acid anhydrides." \i Polym. Test\i0 . 21.3 (2002): 243-245. DOI: 10.1016/S0142-9418(01)00075-7.\par \par Glavchev, I., K. Petrova, and M. Ivanova. "Determination of the coefficient of thermal expansion of epoxy composites." \i Polym. Test\i0 . 21.2 (2002): 177-179. DOI: 10.1016/S0142-9418(01)00066.\par \par Glavchev, I., K. T. Petrova, and I. Devedjiev. "Determination of the rate of cure of epoxy resin/maleic anhydride/Lewis acids." \i Polym. Test\i0 . 21.1 (2002): 89-91. DOI: 10.1016/S0142-9418(01)00053-8.\par \par Alexieva, V., I. Sergiev, K. Markova-Petrova, I. Devedjiev, and E. Karanov. "Herbicidal activity of some novel phosphoamides." \i Comptes rendus de l?Academie bulgare des Sciences/ Dokladi na B"lgarskata Akademiya na Naukite\i0 . 54.1 (2001): 75-80. http://www.proceedings.bas.bg/.\par \par Glavchev, I., K. T. Petrova, and I. Devedjiev. "Investigation of solvent interaction in epoxy coatings." \i Polym. Test\i0 . 19.1 (2000): 111-114. DOI: 10.1016/S0142-9418(98)00073-7.\par \par Devedjiev, I., K. Petrova, and I. Glavchev. "Peak-like dependence of the coefficient of thermal expansion-temperature." \i Journal of the University of Chemical Technology and Metallurgy\i0 . 35 (2000): 105-108. http://dl.uctm.edu/journal/node/j2000/ChemTech.htm#tech5.\par \par Devedjiev, I., K. T. Petrova, and I. Glavchev. "Preparation of glycidylmethacrylate." \i Journal of the University of Chemical Technology and Metallurgy\i0 . 35 (2000): 87-90. http://dl.uctm.edu/journal/node/j2000/ChemTech.htm#tech1.\par \par Devedjiev, I., K. Petrova, and I. Glavchev. "Reaction between oxophosphorus acids and glycine." \i Synth. Commun\i0 . 30.24 (2000): 4411-4415. DOI: 10.1080/00397910008087067.\par \par }